Institute of Microanalytical Systems, Department of Chemistry and Innovation Center for Cell Signaling Network , Zhejiang University , Hangzhou , 310058 , China.
Anal Chem. 2018 May 1;90(9):5810-5817. doi: 10.1021/acs.analchem.8b00343. Epub 2018 Apr 12.
Herein, we developed an automated and flexible system for performing miniaturized liquid-liquid reactions and assays in the femtoliter to picoliter range, by combining the contact printing and the droplet-based microfluidics techniques. The system mainly consisted of solid pins and an oil-covered hydrophilic micropillar array chip fixed on an automated x- y- z translation stage. A novel droplet manipulation mode called "dipping-depositing-moving" (DDM) was proposed, which was based on the programmable combination of three basic operations, dipping liquids and depositing liquids with the solid pins and moving the two-dimensional oil-covered hydrophilic pillar microchip. With the DDM mode, flexible generation and manipulation of small droplets with volumes down to 179 fL could be achieved. For overcoming the scale phenomenon specially appeared in picoliter-scale droplets, we used a design of water moat to protect the femtoliter to picoliter droplets from volume loss through the cover oil during the droplet generation, manipulation, reaction and assay processes. Moreover, we also developed a precise quantitative method, quantitative droplet dilution method, to accurately measure the volumes of femtoliter to picoliter droplets. To demonstrate its feasibility and adaptability, we applied the present system in the determination of kinetics parameter for matrix metalloproteinases (MMP-9) in 1.81 pL reactors and the measurement the activity of β-galactosidase in single cells (HepG2 cells) in picoliter droplet array. The ultrasmall volumes of the droplet reactors avoided the excessive dilution to the reaction solutions and enabled the highly sensitive measurement of enzyme activity in the single cell level.
在这里,我们开发了一种自动化和灵活的系统,用于在皮升级到飞升级范围内进行微型化的液-液反应和分析,方法是结合接触印刷和基于液滴的微流控技术。该系统主要由固体针和固定在自动化 x-y-z 平移台上的油覆盖亲水微柱阵列芯片组成。提出了一种称为“浸蘸-沉积-移动”(DDM)的新型液滴操作模式,该模式基于三个基本操作的可编程组合,即使用固体针浸蘸和沉积液体以及移动二维油覆盖亲水微柱芯片。通过 DDM 模式,可以灵活地生成和操作体积低至 179 fL 的小液滴。为了克服皮升级液滴中特有的尺度现象,我们使用了水护城河设计来保护飞升级到皮升级液滴在生成、操作、反应和分析过程中不通过覆盖油而损失体积。此外,我们还开发了一种精确的定量方法,即定量液滴稀释法,以准确测量飞升级到皮升级液滴的体积。为了证明其可行性和适应性,我们将该系统应用于在 1.81 pL 反应器中测定基质金属蛋白酶(MMP-9)的动力学参数和在皮升级液滴阵列中测量单个细胞(HepG2 细胞)中的β-半乳糖苷酶活性。液滴反应器的超小体积避免了对反应溶液的过度稀释,并实现了单个细胞水平上酶活性的高灵敏度测量。